Thick and Thin Film Solar Cells: New Formulation

IF 0.9 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
J. Velazquez-Perez, O. Titov, Yuri G. Gurevich
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引用次数: 0

Abstract

Solar cells rely on photogeneration of charge carriers in p-n junctions and their transport and subsequent recombination in the quasineutral regions. Several basic issues concerning the physics of the operation of solar cells remain obscure. This paper discusses some of those unsolved basic problems. In conventional solar cells, recombination of photogenerated charge carriers plays a major limiting role in the cell efficiency. High quality thin-film solar cells may overcome this limit if the minority diffusion lengths become large as compared to the cell dimensions, but, strikingly, the conventional model fails to describe the cell electric behavior under these conditions. A new formulation of the basic equations describing charge carrier transport in the cell along with a set of boundary conditions is presented. An analytical closed-form solution is obtained under the linear approximation. It is  shown that the calculation of the open-circuit voltage of the solar cell diode does not lead to unphysical results in the new given framework.
厚膜和薄膜太阳能电池:新配方
太阳能电池依赖于 p-n 结中电荷载流子的光生成及其在准中性区的传输和随后的重组。有关太阳能电池工作物理的几个基本问题仍然模糊不清。本文将讨论其中一些尚未解决的基本问题。在传统太阳能电池中,光生电荷载流子的重组是电池效率的主要限制因素。如果少子扩散长度与电池尺寸相比变大,高质量薄膜太阳能电池就能克服这一限制,但令人惊讶的是,传统模型无法描述这些条件下的电池电行为。本文提出了描述电池中电荷载流子传输的基本方程的新公式以及一组边界条件。在线性近似条件下,得到了一个解析闭式解。结果表明,在新的给定框架下,太阳能电池二极管开路电压的计算不会导致非物理结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.70
自引率
14.30%
发文量
83
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